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生物膜的电解环境和静电特性模型。

Model for the electrolytic environment and electrostatic properties of biomembranes.

作者信息

Amory D E, Dufey J E

出版信息

J Bioenerg Biomembr. 1985 Jun;17(3):151-74. doi: 10.1007/BF00751059.

Abstract

Physical and chemical interactions of ions with biomembranes are described by a model originating from the Stern theory. Equations of the model have analytical solutions only for very simple, often unrealistic situations. The numerical resolution adopted permits a much wider application of the model: Potentials and concentrations can be calculated anywhere from the surface and in any electrolytic environment. The model is applied to biomembranes. Simulations are presented in three-dimensional figures which allow one to use the model as a practical research tool. In particular, the simulations reveal that, in practice, it is possible to induce an increase of the surface charge density simultaneously with a decrease of the surface potential, and, theoretically, that the potential at the exclusion distance (which estimates the diffuse layer thickness) exhibits a remarkably constant value as the composition of the free solution is varied.

摘要

离子与生物膜的物理和化学相互作用由一个源自斯特恩理论的模型描述。该模型的方程仅在非常简单且通常不切实际的情况下有解析解。所采用的数值求解方法使该模型有更广泛的应用:可以在表面的任何位置以及任何电解环境中计算电位和浓度。该模型应用于生物膜。模拟结果以三维图形呈现,这使得该模型可作为一种实用的研究工具。特别是,模拟结果表明,在实际中,有可能在表面电位降低的同时诱导表面电荷密度增加,并且从理论上讲,随着自由溶液组成的变化,排斥距离(估计扩散层厚度)处的电位呈现出非常恒定的值。

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